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Establishment and Propagation of Human Retinoblastoma Tumors in Immune Deficient Mice
Published on: August 4, 2011
Downregulation of Nodal inhibits metastatic progression in retinoblastoma
Laura Asnaghi1,2, David T White3, Lynn Yoon4
1Department of Pathology, Johns Hopkins University, School of Medicine, Smith Building, 400 N. Broadway Avenue, Room 4029, Baltimore, MD, 21287, USA. LauraAsnaghi1@aol.com.
Abstract:
Retinoblastoma is the most common intraocular malignancy in children. We previously found that the ACVR1C/SMAD2 pathway is significantly upregulated in invasive retinoblastoma samples from patients. Here we studied the role of an ACVR1C ligand, Nodal, in regulating growth and metastatic dissemination in retinoblastoma. Inhibition of Nodal using multiple short hairpin (shRNAs) in WERI Rb1 and Y79 retinoblastoma cell cultures reduced growth by more than 90%, as determined by CCK-8 growth assay. Proliferation was also significantly inhibited, as found by Ki67 assay. These effects were paralleled by inhibition in the phosphorylation of the downstream effector SMAD2, as well as induction of apoptosis, as we observed more than three-fold increase in the percentage of cells positive for cleaved-caspase-3 or expressing cleaved-PARP1. Importantly, we found that downregulation of Nodal potently suppressed invasion in vitro, by 50 to 80%, as determined by transwell invasion assay (p = 0.02). Using an orthotopic model of retinoblastoma in zebrafish, we found 34% reduction in the ability of the cells to disseminate outside the eye, when Nodal was knocked down by shRNA (p = 0.0003). These data suggest that Nodal plays an important role in promoting growth, proliferation and invasion in retinoblastoma, and can be considered a new therapeutic target for both primary tumor growth and metastatic progression.
Insights
Nodal signaling inhibition significantly reduces retinoblastoma growth and metastasis. Targeting Nodal offers a potential new therapeutic strategy for this common childhood eye cancer.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Retinoblastoma is the most common pediatric intraocular malignancy.
- The ACVR1C/SMAD2 pathway is upregulated in invasive retinoblastoma.
- Nodal, an ACVR1C ligand, is investigated for its role in retinoblastoma progression.
Purpose of the Study:
- To investigate the role of Nodal in retinoblastoma growth and metastasis.
- To evaluate Nodal as a potential therapeutic target for retinoblastoma.
Main Methods:
- Nodal inhibition using short hairpin RNAs (shRNAs) in retinoblastoma cell lines (WERI Rb1, Y79).
- Assays used: CCK-8 for growth, Ki67 for proliferation, cleaved-caspase-3 and cleaved-PARP1 for apoptosis, transwell assay for invasion.
- Orthotopic retinoblastoma model in zebrafish to assess metastatic dissemination.
Main Results:
- Nodal inhibition reduced retinoblastoma cell growth by over 90% and inhibited proliferation.
- Nodal knockdown led to increased apoptosis and significantly suppressed invasion in vitro (50-80%).
- In zebrafish models, Nodal knockdown reduced metastatic dissemination by 34%.
Conclusions:
- Nodal signaling is crucial for retinoblastoma growth, proliferation, and invasion.
- Nodal represents a promising therapeutic target for retinoblastoma, potentially inhibiting both primary tumor growth and metastasis.
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